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用氯硅烷蒸汽对共晶镓铟(eGaIn)上的氧化镓进行反应蚀刻以诱导差异润湿性。

Reactive etching of gallium oxide on eutectic gallium indium (eGaIn) with chlorosilane vapor to induce differential wetting.

作者信息

Hossain Kazi Zihan, Monwar Momena, Khan M Rashed

机构信息

Department of Chemical and Materials Engineering, University of Nevada, Reno, Reno, Nevada 89557, USA.

出版信息

Soft Matter. 2023 May 3;19(17):3199-3206. doi: 10.1039/d3sm00258f.

Abstract

Differentially wettable surfaces are well sought after in energy, water, health care, separation science, self-cleaning, biology, and other lab-on-chip applications-however, most demonstrations of realizing differential wettability demand complex processes. Herein, we chemically etch gallium oxide (GaO) from in-plane patterns (2D) of eutectic gallium indium (eGaIn) to demonstrate a differentially wettable interface using chlorosilane vapor. We produce 2D patterns of eGaIn on bare glass slides in native air using cotton swabs as paint brushes. Exposing the entire system to chlorosilane vapor induces chemical etching of the oxide layer, which recovers the high-surface energy of eGaIn, to produce nano-to-mm droplets on the pre-patterned area. We rinse the entire system with deionized (DI) water to achieve differentially wettable surfaces. Measurements of contact angles using a goniometer confirmed hydrophobic and hydrophilic interfaces. Scanning electron microscopy (SEM) images confirmed the distribution and energy dispersive spectra (EDS) exhibited the elemental compositions of the micro-to-nano droplets after silanization (silane treatment). Also, we demonstrated two proofs of concept, , open-ended microfluidics and differential wettability on curved interfaces, to demonstrate the advanced applications of the current work. This straightforward approach using two soft materials (silane and eGaIn) to achieve differential wettability on laboratory-grade glass slides and other surfaces has future implications for nature-inspired self-cleaning surfaces in nanotechnologies, bioinspired and biomimetic open-channel microfluidics, coatings, and fluid-structure interactions.

摘要

在能源、水、医疗保健、分离科学、自清洁、生物学以及其他芯片实验室应用领域,具有不同润湿性的表面备受关注——然而,大多数实现不同润湿性的演示都需要复杂的过程。在此,我们通过化学蚀刻共晶镓铟(eGaIn)的平面图案(二维)中的氧化镓(GaO),以使用氯硅烷蒸汽来演示具有不同润湿性的界面。我们使用棉签作为画笔,在自然空气中的裸载玻片上制作eGaIn的二维图案。将整个系统暴露于氯硅烷蒸汽中会引发氧化层的化学蚀刻,从而恢复eGaIn的高表面能,在预先图案化的区域上产生纳米到毫米级的液滴。我们用去离子(DI)水冲洗整个系统,以实现具有不同润湿性的表面。使用测角仪测量接触角证实了疏水和亲水界面。扫描电子显微镜(SEM)图像证实了分布情况,能量色散谱(EDS)显示了硅烷化(硅烷处理)后微米到纳米级液滴的元素组成。此外,我们展示了两个概念验证,即开放式微流体和弯曲界面上的不同润湿性,以证明当前工作的先进应用。这种使用两种软材料(硅烷和eGaIn)在实验室级载玻片和其他表面上实现不同润湿性的直接方法,对纳米技术中受自然启发的自清洁表面、受生物启发和仿生的开放式通道微流体、涂层以及流固相互作用具有未来意义。

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